Controlled engineering reference
Valve Flow Coefficient Reference Calculator
Calculate a required liquid Kv, liquid flow, or valve-only pressure drop using one explicitly bounded relation. The page does not size gas or steam and does not select a valve.
Reference calculation
Calculated reference
Relations used
All values are numerical values in the stated units. Let r = ρ/(1000 kg/m³), with Q in m³/h and Δp in bar:
These three liquid equations are algebraic inverses. Their dimensional meaning depends on the displayed unit normalization; the code does not silently convert L/min, US gpm, gauge pressure or line pressure. The Cv relation is the published US-Cv/Kv conversion shown by Spirax Sarco, not an assertion that Cv is an ISO quantity.
| Simvol | Input/result unit | Required interpretation |
|---|---|---|
| Q | m³/saat | Actual liquid volumetric flow for the stated flowing condition. |
| ρ | kq/m³ | Liquid density at the flowing temperature and composition; not a stored material preset. |
| Δp | bar | Positive pressure loss across the valve only, within the non-choked, non-cavitating scope confirmed by the user. |
| Kv | m³/saat | Numerical metric flow coefficient for the stated relation; compare with manufacturer data at the applicable travel. |
| Cv (ABŞ) | US gpm-based coefficient | Reference conversion only. Do not confuse with Cv based on an Imperial gallon. |
The calculation uses finite IEEE 754 binary arithmetic and displays up to 12 significant digits. Appropriate process-data uncertainty and manufacturer tolerances still apply.
Standards boundary and evidence
The official IEC record lists the publication and its 2015 corrigendum as valid, with a stability date of 2028. Its installed-condition equations cover compressible and incompressible flow and include corrections beyond this reduced page. The IEC scope says the incompressible equations are based on Newtonian incompressible-fluid hydrodynamics and are not intended for non-Newtonian fluids, mixtures, slurries or liquid-solid conveyance.
Official IEC publication recordThe official ISA product record identifies the US modified adoption for installed-condition control-valve flow sizing. The licensed standard text was not used to invent clause numbers or to claim that this reduced calculator implements every correction.
Official ISA publication recordPublishes the liquid Kv, Q and Δp inverse relations with Q in m³/h, Δp in bar and ρ in kg/m³; distinguishes Kvs at maximum travel and warns that approximate results do not replace technical planning or individual system design.
Official Bürkert referenceDistinguishes required Kvr from rated Kvs and publishes Cv (US) = Kv × 1.156099 while warning that Imperial and US Cv values differ.
Official Spirax Sarco referenceThe official chapter shows that gas sizing introduces expansion factor Y, absolute inlet pressure, specific-heat factor Fk, pressure-drop ratio xT and compressibility Z; it also shows liquid critical-flow and piping-reducer factors. This supports excluding those cases from the reduced relation.
Official ISA chapter PDFSources checked 16 July 2026. Classification: manufacturer-documented reference calculation within a restricted subset of the broader IEC/ISA sizing problem; not a conformity certificate, final valve selection or complete implementation of IEC 60534-2-1.
Why common shortcuts were removed
Why is there no gas mode?
Why is there no recommended Kvs = 1.3 × Kv?
Why are there no built-in fluid presets?
Can the calculated Δp be subtracted from line pressure?
Related tools
Revision: 16 July 2026. Result status: restricted engineering reference; manufacturer and process review required.